scholarly journals Acute Kahweol Treatment Attenuates Traumatic Brain Injury Neuroinflammation and Functional Deficits

Nutrients ◽  
2019 ◽  
Vol 11 (10) ◽  
pp. 2301 ◽  
Author(s):  
Hung-Fu Lee ◽  
Jhih Syuan Lin ◽  
Che-Feng Chang

Traumatic brain injury (TBI) affects millions worldwide with devastating long-term effects on health and cognition. Emerging data suggest that targeting the immune response may offer promising strategies to alleviate TBI outcomes; kahweol, an anti-inflammatory diterpene that remains in unfiltered coffee, has been shown to be beneficial in neuronal recovery. Here, we examined whether kahweol could alleviate brain trauma-induced injury in a mouse model of TBI and its underlying mechanisms. TBI was induced by controlled cortical impact (CCI) and various doses of kahweol were intraperitoneally administered following injury. Contusion volume, brain edema, neurobehavioral deficits, and protein expression and activity were evaluated in both short-term and long-term recovery. We found that kahweol treatments significantly reduced secondary brain injury and improved neurobehavioral outcomes in TBI mice. These changes were accompanied by the attenuation of proinflammatory cytokine secretion, decreased microglia/macrophage activation, and reduction of neutrophil and leukocyte infiltration. In addition, continuous kahweol treatment further improved short-term TBI outcomes compared to single-dosage. Collectively, our data showed that kahweol protects against TBI by reducing immune responses and may serve as a potential therapeutic intervention for TBI patients.

Biomedicines ◽  
2021 ◽  
Vol 10 (1) ◽  
pp. 36
Author(s):  
Rany Vorn ◽  
Maiko Suarez ◽  
Jacob C. White ◽  
Carina A. Martin ◽  
Hyung-Suk Kim ◽  
...  

Chronic mild traumatic brain injury (mTBI) has long-term consequences, such as neurological disability, but its pathophysiological mechanism is unknown. Exosomal microRNAs (exomiRNAs) may be important mediators of molecular and cellular changes involved in persistent symptoms after mTBI. We profiled exosomal microRNAs (exomiRNAs) in plasma from young adults with or without a chronic mTBI to decipher the underlying mechanisms of its long-lasting symptoms after mTBI. We identified 25 significantly dysregulated exomiRNAs in the chronic mTBI group (n = 29, with 4.48 mean years since the last injury) compared to controls (n = 11). These miRNAs are associated with pathways of neurological disease, organismal injury and abnormalities, and psychological disease. Dysregulation of these plasma exomiRNAs in chronic mTBI may indicate that neuronal inflammation can last long after the injury and result in enduring and persistent post-injury symptoms. These findings are useful for diagnosing and treating chronic mTBIs.


Author(s):  
Mark Wilson

Interest in concussion and sports-related injury has intensified in recent years for three main reasons: (1) it is a preventable form of brain injury; (2) there is increasing evidence that repeated injury can result in long-term neurocognitive loss; and (3) as a result there are potential medicolegal costs to organizations that, possibly inadvertently, allow this form of brain injury to occur within their sport. The long-term effects of boxing resulting in dementia pugilistica have been appreciated for some time, however the results of repeated mild head injury in other sports is now under focus. Concussion, increasingly termed mild traumatic brain injury, should be graded. Imaging, removal from, and return to sport are all discussed in this chapter.


2019 ◽  
Vol 42 (17) ◽  
pp. 2383-2392
Author(s):  
Jessica M. Aguilar ◽  
Chloe B. Elleman ◽  
Amy E. Cassedy ◽  
Nori Mercuri Minich ◽  
Nanhua Zhang ◽  
...  

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